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首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >Critical factors affecting ethanol production by immobilized Pichia stipitis using corn cob hemicellulosic hydrolysate
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Critical factors affecting ethanol production by immobilized Pichia stipitis using corn cob hemicellulosic hydrolysate

机译:利用玉米玉米棒状半纤维素水解产物,影响乙醇生产的关键因素

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Fermentation of xylose from hydrolysate of acid-treated corn cob by Pichia stipitis is inhibited by acetic acid and lignin derivatives. In the present study, we have designed and implemented an immobilized cell culture for xylose to ethanol conversion from acid-treated corn cob hydrolysate without the removal of fermentation inhibitors. In this study, cultivations of suspended and immobilized Pichia were compared in terms of ethanol yield and productivity to investigate whether the cell immobilization could improve resistance to inhibitors. Cell immobilization clearly favored the fermentative metabolism in nondetoxified corn cob hydrolysate leading to an improvement of twofold ethanol productivity as compared to that achieved with suspension culture. Calcium alginate as an immobilization matrix was selected to immobilize Pichia cells. Concentrations of sodium alginate, calcium chloride, and fermentor agitation speed were optimized for ethanol production using statistical method. Statistical analysis showed that agitation speed had maximum influence on ethanol production by immobilized Pichia cells. In comparison to suspension culture, immobilization had a positive impact on the fermentative metabolism of Pichia, improving the ethanol yield from 0.40 to 0.43g/g and productivity from 0.31 to 0.51g/L/h for acid-treated corn cob hydrolysate.
机译:通过拟亚赤霉素和木质素衍生物抑制来自酸处理的玉米棒水解产物的木糖的发酵。在本研究中,我们设计并实施了用于木糖的固定化细胞培养物,以从酸处理的玉米棒水解产物的乙醇转化,而不会除去发酵抑制剂。在该研究中,在乙醇产率和生产率方面比较悬浮和固定的pichia的培养,以研究细胞固定化是否可以改善对抑制剂的抗性。细胞固定化清楚地赞成非氧化玉米棒水解产物中的发酵代谢,与悬浮培养的实现相比,改善双重乙醇生产率。选择作为固定基质的藻酸钙以固定pichia细胞。使用统计方法优化藻酸钠,氯化钙和发酵液搅拌速度的浓度。统计分析表明,搅拌速度对固定的毕赤细胞产生最大的对乙醇产生的影响。与悬浮培养物相比,固定化对Pichia的发酵代谢产生了阳性影响,从0.40至0.43g / g提高乙醇产率,从0.31-0.51g / l / h / l / h为酸处理的玉米棒水解产物。

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